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Sanjeevikumar Padmanaban

Researcher at Aarhus University

Publications -  431
Citations -  9689

Sanjeevikumar Padmanaban is an academic researcher from Aarhus University. The author has contributed to research in topics: Photovoltaic system & Computer science. The author has an hindex of 34, co-authored 367 publications receiving 5244 citations. Previous affiliations of Sanjeevikumar Padmanaban include Sathyabama University & National Institute of Technology, Puducherry.

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Investigation of lubrication effect on the backward extrusion of thin-walled rectangular aluminum case with large aspect ratio

TL;DR: In this article, numerical analysis based on the finite volume method is performed for investigating the effects of solid lubricants in aluminum backward extrusion processes, and a friction factor of 0.2 is found to be optimal for minimizing it.
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Nonisolated Symmetrical Interleaved Multilevel Boost Converter With Reduction in Voltage Rating of Capacitors for High-Voltage Microgrid Applications

TL;DR: The characteristics and operation of the proposed converter are discussed in this article with the continuous conduction mode and Discontinuous Conduction Mode boundary conditions and the design of the reactive components and selection of semiconductor devices are discussed.
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Class E Power Amplifier Design and Optimization for the Capacitive Coupled Wireless Power Transfer System in Biomedical Implants

TL;DR: In this paper, an inductive-capacitive-inductive (LCL) impedance matching network is designed for the robust operation of the PA, which improves the efficiency and maintains required impedance compression.
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Design and Real-Time Simulation of an AC Voltage Regulator Based Battery Charger for Large-Scale PV-Grid Energy Storage Systems

TL;DR: A novel grid energy storage system for large-scale PV systems is discussed, with the proposed configuration, the battery charging and discharging are carried out through an AC voltage regulator which is connected in series to the line.
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Closed-Loop Control and Performance Evaluation of Reduced Part Count Multilevel Inverter Interfacing Grid-Connected PV System

TL;DR: A novel reduced part count MLI interfacing single-stage grid-tied PV system along with a closed-loop control strategy that ensures the maximum power tracking, dc-link voltage balancing, satisfactory operation of the MLI and injection of clean sinusoidal grid current under any dynamic changes is presented.